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Researchers at Harvard have created a groundbreaking metasurface that can replace bulky and complex optical components used ...
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Interesting Engineering on MSNHarvard’s single ultra-thin chip breakthrough collapses quantum computing’s hurdles
A metasurface is an ultra-thin planar device patterned with nanoscale structures that are smaller than the wavelength of ...
Using a process known as “magic state distillation” in logical qubits will help make future quantum computers more ...
A Harvard-led, DARPA supported team developed novel logical qubits to enable scalable quantum computers. A team of researchers working on DARPA’s Optimization with Noisy Intermediate-Scale Quantum ...
Key takeawaysIn the race toward practical quantum computers and networks, photons -- fundamental particles of light -- hold intriguing possibilities ...
Researchers created an ultra-thin optical array that controls photons like bulky quantum devices, offering a scalable path to ...
A team of scientists from QuEra Computing, Harvard University and the Massachusetts Institute of Technology has reported - Read more from Inside HPC & AI News.
A team of DARPA-funded researchers led by scientists at Harvard, with support from QuEra Computing, MIT, Princeton, NIST, and the University of Maryland, claim they’ve created a first-of-its ...
Harvard University Summary: Quantum computers promise to reach speeds and efficiencies impossible for even the fastest supercomputers of today.
A team of Harvard researchers working with the quantum computing company Quantinuum announced the creation of a new phase of matter in a research paper last month. Harvard Physics professor Ashvin ...
A new quantum computer startup born from researchers at Harvard University and Massachusetts Institute of Technology (MIT) called QuEra Computing said on Wednesday it raised $17 million from ...
A team of scientists from QuEra Computing, Harvard University and the Massachusetts Institute of Technology has reported the first experimental demonstration of magic state distillation carried out ...
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